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UNBALANCED RESPONSE OF CRACKED ROTOR-BEARING SYSTEM UNDER TIME-DEPENDENT BASE MOVEMENTS

机译:在时间依赖性基础运动下破裂转子系统的不平衡响应

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Unbalanced response of cracked rotor-bearing system under time-dependent base movements is studied in this paper. Three base angular motions, including the rolling, pitching and yawing motions, are assumed to be sinusoidal perturbations superimposed upon constant terms. Both the open and breathing transverse cracks are considered in the analysis. The finite element model is established for the base excited rotor-bearing system with open or breathing cracks. Considering the time-varying base movements and transverse cracks, the second order differential equations of the system will not only have time-periodic gyroscopic and stiffness coefficients, but also the multi-frequency external excitations. An improved harmonic balance method is introduced to obtain the steady-state response of the system under both base and unbalance excitations. The whirling frequencies of the equivalent time-invariant system, orbits of shaft center, response spectra and frequency response characteristics, are analyzed accordingly. The effects of various base angular motions, frequency and amplitude of base excitations, and crack depths on the system dynamic behaviors are considered in the discussions.
机译:在本文中研究了在时间依赖性基础运动下的裂纹转子轴承系统的不平衡响应。假设三个基部角动术,包括滚动,俯仰和摇摆运动,以持续术语叠加正弦扰动。在分析中考虑了开放和呼吸的横向裂缝。为基座激励的转子轴承系统建立有限元模型,具有打开或呼吸裂缝。考虑到时变的基础运动和横向裂缝,系统的二阶微分方程不仅具有时间周期性陀螺仪和刚度系数,而且还具有多频外部激励。引入了改进的谐波平衡法,以在基础和不平衡激发下获得系统的稳态响应。相应地分析了等效时间不变系统,轴中心,响应光谱和频率响应特性的旋转频率。在讨论中考虑了各种基座角运动,频率和基本激励的频率和幅度的脉冲深度的影响。

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